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INVESTIGATIONS OF IN-PLANE FLUIDELASTIC INSTABILITY IN A MULTI-SPAN U-BEND TEST RIG: TESTS IN TWO-PHASE FLOW

机译:多跨U型弯曲试验台中的平面内部流化稳定性的研究:两相流的测试

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Tests to study FluidElastic Instability (FEI) in an array of U-bend tubes were recently completed in the Multi-Span U-Bend (MSUB) test rig at Canadian Nuclear Laboratories (CNL). These tests were sponsored by the Electric Power Research Institute (EPRI) and were designed to study In-Plane (IP or streamwise) FEI of steam generator tubes in two-phase cross flow. This instability mechanism was first observed in previous research tests by Atomic Energy of Canada Limited (AECL). Although AECL planned additional research into IP FEI, this mechanism was not thought to be a serious practical concern until it recently caused severe damage to tubes in a new replacement steam-generator. The MSUB tests were conducted both with flows of air and two-phase liquid/vapour Refrigerant 134a. With 22 flexible U-bend tubes supported by a configurable flat-bar arrangement, the tests were focused on the effects of support geometry and tube-to-support interaction. Data was recorded from 33 dynamic signals from accelerometers, displacement probes, force transducers, and void-fraction probes. The paper describes the experimental test setup and reviews some of the initial test results and their implications for steam-generator users and researchers. Tests with two-phase Freon refrigerant (R-134a) are presented here.
机译:最近在加拿大核实验室(CNL)的多跨U型弯曲(MSUB)试验室中研究了在U形弯管阵列中研究了U形弯管阵列的流动不稳定(FEI)。这些测试由电力研究所(EPRI)赞助,设计用于在两相交叉流动中研究蒸汽发生器管的平面(IP或流动)FEI。在加拿大有限公司(AECL)的原子能先前的研究试验中首次观察到这种不稳定机制。尽管AECL计划额外研究IP FEI,但这种机制并未被认为是一个严重的实际关注,直到最近在新的替代蒸汽发生器中对管造成严重损坏。使用空气和两相液/蒸汽制冷剂134a的流进行MSUB测试。通过可配置的平板装置支撑的22个柔性U形弯管,测试专注于支撑几何形状和管 - 支撑相互作用的影响。从来自加速度计,位移探针,力传感器和空隙分数探针的33个动态信号记录数据。本文介绍了实验测试设置和评论了一些初始测试结果及其对蒸汽发生器用户和研究人员的影响。这里给出了用两相氟利昂制冷剂(R-134a)的测试。

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